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Genetics in the Honey Bee: Achievements and Prospects toward the Functional Analysis of Molecular and Neural Mechanisms Underlying Social Behaviors

机译:蜜蜂中的遗传学:社会行为背后的分子和神经机制的功能分析的成就和前景

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摘要

The European honey bee is a model organism for studying social behaviors. Comprehensive analyses focusing on the differential expression profiles of genes between the brains of nurse bees and foragers, or in the mushroom bodies—the brain structure related to learning and memory, and multimodal sensory integration—has identified candidate genes related to honey bee behaviors. Despite accumulating knowledge on the expression profiles of genes related to honey bee behaviors, it remains unclear whether these genes actually regulate social behaviors in the honey bee, in part because of the scarcity of genetic manipulation methods available for application to the honey bee. In this review, we describe the genetic methods applied to studies of the honey bee, ranging from classical forward genetics to recently developed gene modification methods using transposon and CRISPR/Cas9. We then discuss future functional analyses using these genetic methods targeting genes identified by the preceding research. Because no particular genes or neurons unique to social insects have been found yet, further exploration of candidate geneseurons correlated with sociality through comprehensive analyses of mushroom bodies in the aculeate species can provide intriguing targets for functional analyses, as well as insight into the molecular and neural bases underlying social behaviors.
机译:欧洲蜜蜂是研究社会行为的典范生物。侧重于护理蜜蜂和觅食者的大脑之间或蘑菇体内的基因的差异表达谱的综合分析-与学习和记忆有关的大脑结构以及多峰感觉整合-已经确定了与蜜蜂行为有关的候选基因。尽管积累了关于与蜜蜂行为有关的基因的表达谱的知识,但仍不清楚这些基因是否实际上调节了蜜蜂的社交行为,部分原因是可用于蜜蜂的基因操作方法缺乏。在这篇综述中,我们描述了应用于蜜蜂研究的遗传方法,从经典的正向遗传学到最近使用转座子和CRISPR / Cas9开发的基因修饰方法。然后,我们将讨论使用针对先前研究确定的基因的这些遗传方法的未来功能分析。由于尚未发现社交昆虫特有的特定基因或神经元,因此通过对无脊椎动物物种的蘑菇体进行全面分析,进一步探索与社交相关的候选基因/神经元,可以为功能分析提供有趣的目标,并深入了解分子以及潜在的社会行为的神经基础。

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